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1.
藏原羚集群行为的初步研究   总被引:5,自引:0,他引:5  
2002年10月至2003年12月,在可可西里对藏原羚(Procapra picticaudata)的集群行为进行了初步研究.将其集群划分为雌性群、雄性群、母仔群、雌雄混群和独羚5种类型.共统计藏原羚924群次,计3643只次.其中,雌性群525群次,占56.8%,为最多的集群类型;其余为独羚(26.1%)、雄性群(11.0%)、母仔群(3.0%)和雌雄混群(3.0%).不同大小集群的比例亦有极显著差异,其中2-10只的集群占70.0%,独羚占26.1%,其余为3.9%;最大集群为17只.另外,选择2-8只的集群的个体数占72.9%,选择8只以上集群的个体数为20.5%,独羚仅占6.6%,选择不同大小集群的个体数的差异也极为显著(P<0.001).除独羚外,其余4种集群类型的集群大小存在极显著差异.独羚作为一种特殊的集群类型,其雄性个体的比例占到68.1%,这说明雄性个体比雌性更容易形成独羚.总体而言,藏原羚的集群以雌性群为主,最适集群大小为2-8只.  相似文献   

2.
贺兰山岩羊(Pseudois nayaur)集群特征的季节变化   总被引:2,自引:2,他引:0  
2004年11月~2005年10月,在贺兰山对岩羊(Pseudois nayaur)的集群行为进行了研究,将其集群类型划分为雌性群、雄性群、雌雄群、母仔群、混合群和独羊6种类型.共观察到岩羊1 023群次,计4 866只次,平均群大小为(4.86±2.54)只,最大的群为51只,最小的为独羊.其中,母仔群459群(44.87%)为最多的集群类型,其余为混合群(20.72%)、雄性群(14.86%)、独羊(9.09%)、雌雄群(5.57%)、雌性群(4.89%).母仔群出现的频次在4个季节均最高,除母仔群外,春季雄性群出现的频次最高,而夏、秋、冬季都是混合群出现的频次最高,不同类型集群出现频次的季节间差异极显著.在4个季节中都以2~5只的群居多,其出现的频次占各季节群数50%以上,不同季节群大小差异极显著,而不同集群类型群大小季节间不存在显著差异.除独羊外,不同季节混合群大小差异极显著,母仔群、雌性群大小差异显著,而雄性群、雌雄群大小无显著差异.研究结果显示,贺兰山岩羊集小群是其显著特点,随着季节的变化,其集群类型、集群大小均会发生一定的变化.  相似文献   

3.
2006年6月、8月和2007年6月、8月,采用样线法对青藏铁路昆仑山至沱沱河区间藏羚(Pantholops hodgsoni)迁徙期集群行为进行了研究。集群类型有雌性群(46.5%)、雄性群(7.4%)、母子群(39.7%)、混合群(1.5%)和独羚(4.8%)5种类型,共计473群,7 828只。不同集群类型出现频次差异极显著(p0.01)。2~20只的集群占72.1%,21~50只集群占17.1%,51~100只集群占4.4%,大于100只集群占1.5%,独羚占4.9%,不同集群大小出现频次差异极显著(p0.01)。迁徙季节藏羚平均群体大小为(16.6±1.06)只(平均值±标准误),雌性群(22.3±3.37)只,雄性群(10.5±1.48)只,母子群(13.1±1.07)只,混合群(11.3±3.51)只,不同集群类型的群体规模差异极显著(p0.01)。藏羚的集群大小与集群类型、迁徙季节密切相关,而集群大小的变化是对青藏铁路运营后新环境的一种适应。  相似文献   

4.
新疆卡拉麦里山保护区鹅喉羚的社群结构   总被引:5,自引:2,他引:3  
2005年11月至2007年5月,在新疆卡拉麦里山有蹄类保护区对鹅喉羚的社群结构进行了初步研究.将其集群划分为雌性群、雄性群、亚成体群、独羚、雌雄混合群和不明群6种类型.共统计鹅喉羚564群,总计3186只.春季鹅喉羚以雄性群居多(45.7%);夏秋两季则以雌性群为主(52.9%和70.4%);冬季以混合群居多(60%).卡方独立性检验表明,四个季节间三种社群类型的百分比组成差异显著(x2=68.45,P<0.01),受繁殖周期和季节变化影响.鹅喉羚集群大小范围为1~95只,其中3只群出现最多(20.0%);2~5只的群占54.3%;6~10只的群占23.1%;11~20只的群占9.2%;>20只的群占2.3%.春夏秋冬四季平均群大小分别为(4.45±4.07;4.94±4.20;6.66±10.12;6.0±5.66),其中春季平均集群大小分别与秋季和冬季差异显著.  相似文献   

5.
岩羊(Pseudois nayaur)是青藏高原常见的食草动物,但对边缘分布区的种群了解较少。2018年6月到2019年8月,我们利用红外相机在四川王朗国家级自然保护区对岩羊的集群结构、特征及其季节变化进行了描述与分析。结果显示:调查共记录到岩羊1 921群次,共计6 623只次。按照性别和年龄组,可将岩羊集群划分为混合群、母仔群、雄性群、独雄、独雌、雌性群。研究观察到的最大岩羊集群为23只,最小为独羊(独雄或独雌),集群的平均个体数量为(3.45 ± 2.16)只,以小群为主,种群大小的季节间差异不显著。岩羊集群结构和季节波动特征主要有:(1)混合群最常见,占45.3%,其次依次为母仔群、雄性群、独雄、独雌和雌性群;(2)岩羊集群结构季节波动显著,春季以雄性群(29.5%)和独雄(22.6%)为主,夏季、秋季和冬季主要为混合群(58.5%,41.8%,36.7%)和母仔群(21.4%,24.7%,18.6%);(3)各集群类型在季节间的相对优势存在差异,例如混合群在夏季的优势显著,但母仔群在各季节的优势则无显著差异。依据全年数据,我们认为王朗国家级自然保护区的栖息地特征以及岩羊自身生命周期可能是影响岩羊集群大小、集群类型季节波动的主要因素。  相似文献   

6.
四川省竹巴笼自然保护区矮岩羊的集群特征   总被引:2,自引:0,他引:2  
2007 年7 ~12 月和2008 年4 ~6 月,采用样线法和定点观察法,在四川省竹巴笼自然保护区对矮岩羊集群行为进行了观察。2007 年观察到34 群共217 只矮岩羊,集群平均为6. 4 ± 4.9 只;2008 年观察到16 群共135只,集群平均为8.4 ± 7.7 只。集群分为雄性群(2007 年:8.8% ;2008 年:6.3% )、雌性群(2007 年:2. 9% ;2008 年:0)、混合群(2007 年:70.6% ;2008 年:81.2% )、母仔群(2007 年:8.8% ;2008 年:12. 5% )和孤羊(2007 年:8.8% ;2008 年:0)5 种类型。在不同季节,5 种集群类型比例都有所变化,差异显著(P <0.01)。集群大小间和集群类型间也有显著或极显著差异,其中2 ~ 10 只的集群在2007 年占73.5%,在2008 年占75.0% ,呈集小群特征。年龄组结构中,成体、亚成体和幼体个体数比为100∶ 26.4∶ 28. 6 (2007 年)和100∶24.7∶ 20. 4 (2008 年)。雌雄性比2007 年为100∶ 55.7,2008 年为100∶ 56.6,年间差异不显著(P > .05)。受集群收益、生物学特征、繁殖周期、资源竞争、生境地形地貌、捕食风险和人类活动等主要因素的影响,矮岩羊在集群类型、集群大小、年龄结构和性比上显示了其生存策略。  相似文献   

7.
2013年10月至2014年9月,于天山中部天格尔山脉乌鲁木齐河源区研究了北山羊的社群结构。将其集群类型划分为雄性群、雌幼群、混合群和独羊4类。共统计北山羊497群,总计6 427只。北山羊最大集群为100只,最小群为1只,全年平均群大小为(12.93±0.65)只。其中春季(14.83±1.35)只,夏季(14.16±1.65)只,秋季(15.17±1.69)只,冬季(9.32±0.74)只。冬季北山羊平均集群大小显著低于其他三个季节。混合群的平均群大小最大,其余依次为雌幼群和雄性群。Kruskal-Wallis H检验结果表明各社群类型群大小差异极显著。北山羊多以2-7只的小群活动,占到总遇见频次比例的41.05%,8-20只群占32.80%,20只以上大群出现最少,占17.71%。在4种集群类型中,雌幼群出现频率最高,占51.91%,其次依次为混合群、雄性群和独羊。卡方检验结果表明4个季节间4种社群类型的出现频次差异显著。研究结果显示,北山羊在发情期混群,非繁殖期同性集群。受环境因素和自身生理周期的影响,其集群大小、集群类型均随季节变化而变化。  相似文献   

8.
冬春季矮岩羊集群特征比较   总被引:1,自引:1,他引:0  
2007年10月至12月、2008年11月中旬至2009年1月中旬和2009年3月至5月,采用样线法对四川竹巴笼自然保护区矮岩羊冬春季的集群特征进行了研究,春季共观察到73群451只矮岩羊,冬季共观察到170群1036只矮岩羊。发现春季平均群大小为6.18±5.186,最大群34只;冬季平均集群大小为6.65±4.564,最大群24只;春冬两季矮岩羊集群大小季节性变化不显著(P0.05)。在观察到的矮岩羊中,冬春两季矮岩羊集群都以混合群为主,分别占57.20%和45.20%;与春季相比,冬季混合群和独羊出现频率增高,而春季雌性群和母仔群增多;2-8只的集群冬季109群,春季56群,分别占总群数的64.12%和76.71%;9只以上的集群冬季46群,春季15群,分别占总群数的20.06%和20.55%。说明矮岩羊主要以2-8只的小群为主。冬季雌雄比为1∶0.64;雌幼比为1∶0.77;春季雌雄比为1∶0.72;雌幼比为1∶0.81。  相似文献   

9.
春冬两季贺兰山岩羊集群特征的比较   总被引:7,自引:2,他引:5  
20 0 3年 1 1~ 1 2月和 2 0 0 4年 4~ 6月在贺兰山国家级自然保护区对岩羊 (Pseudoisnayaur)春冬两季集群行为进行了初步研究。春季观察到的 2 1 8群 1 3 70只岩羊样本和冬季观察到的 3 1 0群 1 3 3 6只岩羊样本进行了比较 ,发现春季平均岩羊群大小为 (5. 5 7± 5 .3 8)只 ,冬季平均岩羊群大小为 (4. 2 9± 5 . 48)只 ,春冬两季岩羊集群大小季节性变化不显著 (P >0. 0 5 )。贺兰山岩羊在春冬两季 2~ 8只的群所占比例均居多 (春季 :85 . 3 % ;冬季 94 8% )。春季贺兰山岩羊群以雌性群 (4 0 . 3 % ,n =88)为主 ,冬季以混合群(4 9 7% ,n =1 5 4)和雌性群 (4 8 4% ,n=1 5 0 )为主。春冬两季雌性群平均大小间 (P >0 . 0 5 ) ,雄性群平均大小间 (P >0 . 0 5 )和混合群平均大小间 (P >0 . 0 5 )均无显著性差异。将春季和冬季贺兰山岩羊的雌雄比与雌幼比相比 ,春季观察到的雄性个体偏多 ,冬季观察到的幼体较春季多。  相似文献   

10.
2003 年和2004 年的11 ~12 月,采用样线法和全事件取样法研究了贺兰山岩羊的集群特征。共观察到岩羊715 群,共计2 473只。发情前期平均群大小3.5±2.8 只(n = 241),发情期平均群大小3.4±3.2 只(n =297)。发情前期与发情期雄性群、雌性群、雌雄群、混合群及母子群大小间均无显著差异。发情前期到发情期群类型组成差异极显著,发情期雌雄群、混合群和独羊比例显著上升;雄性群、雌性群和母子群比例显著下降。发情前期到发情期,雄性岩羊在雄性群、雌雄群、混合群和独羊中的分布差异极显著,成年雌性岩羊在雌性群、雌雄群、混合群、母子群和独羊中的分布差异极显著。发情期4 个年龄等级雄性在雄性群、雌雄群、混合群和独羊中分布差异极显著,4 个年龄等级雄性岩羊都倾向分布于混合群。
  相似文献   

11.
A total of 91 type and reference strains of the Lactobacillus casei group and the L acidophilus group were characterized by the automated ribotyping device Riboprinter microbial characterization system. The L. casei group was divided into five (C1-C5) genotypes by ribotyping. Among them, the strain of L. casei ATCC 334 was clustered to the same genotype group as most of L. paracasei strains and L casei JCM 1134T generated a riboprint pattern that was different from the type strain of L. zeae. These results supported the designation of L. casei ATCC 334 as the neotype strain, but were not consistent with the reclassification of L. casei JCM 1134T as L. zeae. The L. acidophilus group was also divided into 14 (A1-A11, B1-B3) genotypes by ribotyping. L. acidophilus, L. amylovorus, L. crispatus and L. gallinarum generated ribotype patterns that were distinct from the patterns produced by L. gasseri and L. johnsonii. This result confirmed previous data that the L. acidophilus group divided to two major clusters. Five strains of L. acidophilus and two strains of L. gasseri were correctly reidentified by ribotyping. Most strains belonging to the L. casei group and the L. acidophilus group were discriminated at the species level by automated ribotyping. Thus this RiboPrinter system yields rapid, accurate and reproducible genetic information for the identification of many strains.  相似文献   

12.
应用G6PD ACP ADA AK1和GC-Tf同步电泳的方法及GPT凝胶电泳的方法,分别对内蒙古境内鄂温克、鄂伦春、达斡尔族人476份血痕红细胞酶型:GPT、6-PGD、ACP、ADA、AK1和血清型GC、Tf的遗传多样性进行检测。根据所测表型频率分布、计算出基因频率分布,识别能力和累积识别能力,就其多态性特征及其在法医学鉴定中的应用价值进行了分析讨论。同国内外不同资料进行了比较研究,阐明了三群体上述酶型和血清型遗传多样性分布的规律和特点。从血型遗传学角度探讨了鄂伦春、鄂温克、达斡尔族间的族源、血缘关系。被调查人群中未发现各酶型和血清型的变异型。  相似文献   

13.
14.
Abstract. Functional classifications have been derived for various purposes using subjective, objective and deductive approaches. Most of the classifications were derived to describe a static state of a region or landscape rather than to predict the dynamics of the system. Here, we suggest a simple, but comprehensive functional classification based on life history parameters that can predict the dynamics of plant communities subject to recurrent disturbances. The predicted dynamics are described in terms of survival and local extinction of the functional groups. The groups derived from the classification are probably largely independent of functional groupings that may be derived for other aspects of community composition (e.g. structure, phenology) and community interactions (roughness, albedo etc.). We emphasize that functional classification is context-dependent and we should not expect to find a useful, universal classification into functional groups. Software has been developed to help classify the species into functional groups, to derive successional sequences and to predict community composition under different disturbance regimes both in point and landscape models.  相似文献   

15.
Novel insertion sequence (IS)-like elements were isolated and characterized from phytoplasma strains in the aster yellows (AY) group (16SrI). The IS-like elements were cloned from phytoplasma strains AY1 and NJAY or PCR-amplified from 15 additional strains representing nine subgroups in the AY group using primers based on sequences of the putative transposases (Tpases). All IS-like elements contained sequences encoding similar Tpases of 321 amino acids (320 for strain CPh). Substantial amino acid sequence variability suggested multiple species of Tpases or IS-like elements exist in the AY phytoplasma group. These Tpases have an identical DDE motif that is most similar to the DDE consensus of Tpases in the IS3 family.  相似文献   

16.
Abstract The negative correlation between the time individuals spend scanning the environment for predators and group size is usually explained by the benefit of corporate vigilance. However, this negative correlation may be explained additionally in terms of the ‘dilution effect’ and ‘selfish herd geometry’. Our experimental investigation of the scanning behaviour of free-living spotted turtle doves foraging at different shaped feeders revealed that flock geometry influenced individual scanning rates. The time spent scanning declined with group size less rapidly among birds foraging in linear flocks than among those foraging in more two-dimensional flocks. These results were not confounded by aggressive behaviour, and indicate that the benefits of foraging in groups include the so-called selfish herd geometry.  相似文献   

17.
长江安庆新洲水域鱼类群落结构及多样性   总被引:6,自引:0,他引:6  
沙洲水域环境良好,饵料资源丰富,栖息生境多样,为鱼类的生长繁殖提供了优良的生存环境。为了解长江安庆新洲水域鱼类群落结构特征,于2017年4月、7月、10月和12月对安庆江段新洲水域鱼类群落进行季节性调查。共采集鱼类64种,分属5目11科48属,其中62.5%为鲤科鱼类。以物种数和多样性指数分析群落多样性特征,结果表明新洲水域鱼类种类多样性水平较高。单因素方差分析表明,该群落多样性季节差异显著(P0.05),空间差异不明显。新洲水域鱼类群落优势种为鳊(Parabramis pekinensis Basilewsky, 1855)、鲤(Cyprinus carpio Linnaeus, 1758)、贝氏■(Hemiculter bleekeri Warpachowsky, 1887)、银鮈(Squalidus argentatus Sauvage et Dabry, 1874)和似鳊(Pseudobrama simoni Bleeker, 1864)。4种摄食功能群中,杂食性(42.19%)和肉食性(35.94%)鱼类物种数比例较高;3种生态类群中,淡水定居性鱼类占绝对优势(84.37%);3种栖息水层类型中,底层鱼类物种数比例较高,占37.50%。大型经济鱼类占总渔获物比例低(0.01%),但个体较大,因而相对重要性指数(IRI)高。总体上,新洲鱼类群落多样性和丰富度指数较高,均匀度指数偏低,个体小型化趋势明显。捕捞强度过大、水利工程建设导致的江湖阻隔及外来物种入侵是新洲水域渔业资源衰退的主要因素。由此,建议持续开展长江渔业资源监测,加强长江干流沙洲水域渔业资源保护。  相似文献   

18.
19.
Since the seminal work of Caspar and Klug on the structure of the protein containers that encapsulate and hence protect the viral genome, it has been recognised that icosahedral symmetry is crucial for the structural organisation of viruses. In particular, icosahedral symmetry has been invoked in order to predict the surface structures of viral capsids in terms of tessellations or tilings that schematically encode the locations of the protein subunits in the capsids. Whilst this approach is capable of predicting the relative locations of the proteins in the capsids, information on their tertiary structures and the organisation of the viral genome within the capsid are inaccessible. We develop here a mathematical framework based on affine extensions of the icosahedral group that allows us to describe those aspects of the three-dimensional structure of simple viruses. This approach complements Caspar-Klug theory and provides details on virus structure that have not been accessible with previous methods, implying that icosahedral symmetry is more important for virus architecture than previously appreciated.   相似文献   

20.
A phylogeny of the family Lacertidae was derived from DNA sequences of six mitochondrial genes. Only a few nodes were confidently resolved using maximum parsimony, although the data yielded a total of 1664 phylogenetically informative characters. The lacertids grouped into two subfamilies, the Gallotiinae which includes genera Gallotia and Psammodromus , and the Lacertinae which includes the remaining lacertids. The Lacertinae split into two additional groups. The African group included all African and Arabian lacertids and two Eurasian genera, Eremias and Ophisops; the remaining Eurasian lacertids were included in the Eurasian group. Most of the relationships within the African and Eurasian groups cannot be confidently resolved. A permutation tail probability test suggested that there is very little character covariance in the data to support these unresolved relationships. A recent explosive speciation hypothesis was invoked to explain the lack of structure of the data. The common ancestor of the Eurasian group, as well as the ancestor of the African group, experienced simultaneous, or almost simultaneous, multiple speciation events, which left none or very few characters fixed on the intcrnodes. The phylogenetic reconstruction at the family level will be very difficult, if not impossible. Future phylogenetic research should focus on lower levels.  相似文献   

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